入湖河流尾闾河段河型问题研究进展
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Advances in river pattern problems of tail reach for inflow rivers
  • 作者:陈珺 ; 李斌 ; 邓丽华 ; 于明田 ; 晏成明
  • 英文作者:CHEN Jun;LI Bin;DENG Lihua;YU Mingtian;YAN Chengming;State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering,Hohai University;College of Water Conservancy and Hydropower Engineering,Hohai University;Department of Hydraulic Engineering, Guangdong Polytechnic of Water Resources and Electric Engineering;
  • 关键词:入湖河流 ; 尾闾河段 ; 河型特征 ; 河型成因 ; 河型转化 ; 综述
  • 英文关键词:inflow river;;tail reach;;characteristics of river patterns;;formation of river patterns;;transformation of river patterns;;review
  • 中文刊名:SLSD
  • 英文刊名:Advances in Science and Technology of Water Resources
  • 机构:河海大学水文水资源与水利工程科学国家重点实验室;河海大学水利水电学院;广东水利电力职业技术学院水利工程系;
  • 出版日期:2019-03-10
  • 出版单位:水利水电科技进展
  • 年:2019
  • 期:v.39
  • 基金:国家重点研发计划(2017YFC0405602);; 国家自然科学基金(50909037);; 广东水利科技创新项目(2016-03)
  • 语种:中文;
  • 页:SLSD201902017
  • 页数:7
  • CN:02
  • ISSN:32-1439/TV
  • 分类号:83-89
摘要
回顾和总结了国内外入湖河流尾闾河段河型问题的研究进展,阐述了入湖河流尾闾河段范围的界定方法,分析了入湖河流尾闾河段的平面形态与演变特征,对比了入湖河流尾闾河段河型与冲积河流河型的异同,进一步探讨了不同类型尾闾河段的河型成因以及河型转化影响因素。针对目前入湖河流尾闾河段河型问题研究中存在的不足,指出今后可从入湖河流尾闾河段的河型特征、河型成因机理和河型转化影响因素的定量化等方面加强研究。
        The research progresses on river patterns of the tail reach for inflow rivers at home and abroad are reviewed and summarized. Various methods for determining the scope of the tail reach for inflow rivers are stated and the plane shape characteristics and evolution characteristics of the tail reach are analyzed. The similarities and differences of river patterns between inflow and fluvial rivers are then compared and the formation of river patterns and the key factors that control the transformation of river patterns of the tail reach are further discussed. Aiming at the shortcomings of the current research, it is pointed out that future research can be strengthened in the aspects of river pattern characteristics, mechanisms of river pattern formation and quantification of the influencing factors of river pattern transformation.
引文
[1]朱立俊,韩玉芳,佘明富,等.鄱阳湖赣江尾闾淤积特性及对防洪的影响[J].河海大学学报(自然科学版),2000,28(增刊2):79-83.(ZHU Lijun,HAN Yufang,SHE Mingfu,et al.Deposition features of Ganjiang River delta at Poyang Lake and their impact on flood control[J].Journal of Hohai University(Natural Sciences),2000,28(Sup2):79-83.(in Chinese))
    [2]DING X W,LI X F.Monitoring of the water area variations of Lake Dongting in China with ENVISATASAR images[J].International Journal of Applied Earth Observation and Geoinformation,2011,13(6):894-901.
    [3]张俊勇,陈立,王家生.河型研究综述[J].泥沙研究,2005(4):76-81.(ZHANG Junyong,CHEN Li,WANGJiasheng.Review on the research of river pattern[J].Journal of Sediment Research,2005(4):76-81.(in Chinese))
    [4]何萍,史培军,刘树坤,等.河流分类体系研究综述[J].水科学进展,2008,19(3):434-442.(HE Ping,SHI Peijun,LIU Shukun,et al.Classification of rivers systems[J].Advances in Water Science,2008,19(3):434-442.(in Chinese))
    [5]李志威,刘晶,胡世雄,等.中国冲积大河的河型分布与成因[J].水利水电科技进展,2017,37(2):7-13.(LI Zhiwei,LIU Jing,HU Shixiong,et al.Distribution and formation of river patterns of large alluvial rivers in China[J].Advances in Science and Technology of Water Resources,2017,37(2):7-13.(in Chinese))
    [6]彭文启,薛海,孙东坡,等.尾闾河段的数值模拟研究[J].水利学报,2002,33(1):16-22.(PENG Wenqi,XUE Hai,SUN Dongpo,et al.Study on numerical simulation of river sink[J].Journal of Hydraulic Engineering,2002,33(1):16-22.(in Chinese))
    [7]聂芳容.湘、资、沅、澧四水尾闾地区防洪减灾措施的探讨[J].人民长江,1996,27(6):31-33.(NIEFangrong.Discussion on flood control and hazard mitigation measures of the Xiang,Zi,Yuan and Li River[J].Yangtze River,1996,27(6):31-33.(in Chinese))
    [8]彭建军,谢冬明.洞庭湖区资水尾闾洪灾分析及治理[J].湖南水利水电,2002(4):30-31.(PENG Jianjun,XIE Dongming.Flood analysis and treatment measures of Zi River in Dongting Lake Area[J].Hunan Water Resources and Hydropower,2002(4):30-31.(in Chinese))
    [9]胡旭跃,黄伦超,沈小雄,等.入湖河流尾闾段的河性及航道整治[J].长沙交通学院学报,2002,18(1):49-55.(HU Xuyue,HUANG Lunchao,SHENXiaoxiong,et al.The characteristics of the tail reach of river and channel regulation[J].Journal of Changsha Communications University,2002,18(1):49-55.(in Chinese))
    [10]雷声,章重,张秀平.鄱阳湖流域五河尾闾河道演变遥感研究[J].人民长江,2014,45(4):27-31.(LEISheng,ZHANG Zhong,ZHANG Xiuping.Analysis on tail channel evolution of five main rivers of Poyang Lake based on remote sensing technology[J].Yangtze River,2014,45(4):27-31.(in Chinese))
    [11]王旭,王勇,肖伟华,等.入湖河流尾闾河段界定方法研究[J].水利水电技术,2013,44(2):44-47.(WANGXu,WANG Yong,XIAO Weihua,et al.Study on the method of defining the tail river section into the lake[J].Water Resources and Hydropower Engineering,2013,44(2):44-47.(in Chinese))
    [12]OVEREEM I,KROONENBERG S B,VELDKAMP A,et al.Small-scale stratigraphy in a large ramp delta:recent and holocene sedimentation in the Volga delta,Caspian Sea[J].Sedimentary Geology,2003,159(3):133-157.
    [13]邓庆杰,胡明毅,胡忠贵,等.浅水三角洲分流河道砂体沉积特征:以松辽盆地三肇凹陷扶Ⅱ-Ⅰ组为例[J].石油与天然气地质,2015,36(1):118-127.(DENGQingjie,HU Mingyi,HU Zhonggui,et al.Sedimentary characteristics of distributary channel sand bodies in shallow water delta:a case study of Fu II-I group in Sanzhao depression,Songliao Basin[J].Oil&Gas Geology,2015,36(1):118-127.(in Chinese))
    [14]邹才能,赵文智,张兴阳,等.大型敞流坳陷湖盆浅水三角洲与湖盆中心砂体的形成与分布[J].地质学报,2008,82(6):813-825.(ZOU Caineng,ZHAO Wenzhi,ZHANG Xingyang,et al.Formation and distribution of shallow-water deltas and central-basin sandbodies in large open depression lake basins[J].Acta Geologica Sinica,2008,82(6):813-825.(in Chinese))
    [15]裘亦楠,肖敬修,薛培华.湖盆三角洲分类的探讨[J].石油勘探与开发,1982(1):4-14.(QIU Yinan,XIAO Jingxiu,XUE Peihua.Discussion on category of lake deltas[J].Petroleum Exploration and Development,1982(1):4-14.(in Chinese))
    [16]何治亮.湖盆三角洲分类的初步探讨[J].石油与天然气地质,1986,7(4):385-420.(HE Zhiliang.Preliminary approach of the classification of lake basin deltas[J].Oil&Gas Geology,1986,7(4):385-420.(in Chinese))
    [17]梅志超,林晋炎.湖泊三角洲地地层模式和骨架砂体的特征[J].沉积学报,1991,9(4):1-11.(MEIZhichao,LIN Jinyan.Stratigraphic pattern and character of skeletal sand bodies in lacustrine deltas[J].Acta Sedimentologica Sinica,1991,9(4):1-11.(in Chinese))
    [18]朱海虹,姚秉衡.云南断陷湖泊三角洲沉积及其在石油勘探中的意义[J].石油与天然气地质,1989,10(2):95-106.(ZHU Haihong,YAO Bingheng.Study on the delta deposition in fault lakes,Yunnan Province,and its significance for petroleum exploration[J].Oil&Gas Geology,1989,10(2):95-106.(in Chinese))
    [19]LAGUGOV V.The Ural River Basin:hydrology,characteristics and water use[M].Berlin:Springer Netherlands,2008:129-161.
    [20]KROONENBERG S B,RUSAKOV G V,SVITOCH A A.The wandering of the Volga delta:a response to rapid Caspian sea-level change[J].Sedimentary Geology,1997,107(3-4):189-209.
    [21]YALIN M S.River mechanics[M].Oxford:Pergamon Press,1992:220.
    [22]段冬平,侯加根,刘钰铭,等.河控三角洲前缘沉积体系定量研究:以鄱阳湖三角洲为例[J].沉积学报,2014,32(2):270-277.(DUAN Dongping,HOU Jiagen,LIU Yuming,et al.Quantitative research of fluvialdominated delta front sedimentary system:a case study of Poyang Lake delta[J].Acta Sedimentologica Sinica,2014,32(2):270-277.(in Chinese))
    [23]OLARIU C.Terminal distributary channels and delta front architecture of river-dominated delta systems[J].Journal of Sedimentary Research,2006,76(2):212-233.
    [24]SYVITSKI J P M,SAITO Y.Morphodynamics of deltas under the influence of humans[J].Global&Planetary Change,2007,57(3/4):261-282.
    [25]谢庆宾,管守锐,朱筱敏,等.江西赣江下游中支现代网状河流沉积[J].石油大学学报(自然科学版),2000,24(1):13-17.(XIE Qingbin,GUAN Shourui,ZHU Xiaomin,et al.Modern anastomosed fluvial deposits of the middle tributary of the lower Ganjiang river in Jiangxi Province[J].Journal of the University of Petroleum(Natural Sciences),2000,24(1):13-17.(in Chinese))
    [26]张昌民,尹太举,朱永进,等.浅水三角洲沉积模式[J].沉积学报,2010,28(5):933-944.(ZHANGChangmin,YIN Taiju,ZHU Yongjin,et al.Shallow water deltas and models[J].Acta Sedimentologica Sinica,2010,28(5):933-944.(in Chinese))
    [27]钱宁,张仁,周志德.河床演变学[M].北京:科学出版社,1987.
    [28]张周良,刘少宾.中国的网状河流体系[J].应用基础与工程科学学报,1994,2(2/3):204-212.(ZHANGZhouliang,LIU Shaobin.Anastomosing fluvial systems in China[J].Journal of Basic Science and Engineering,1994,2(2/3):204-212.(in Chinese))
    [29]谢庆宾,朱筱敏,管守锐,等.中国现代网状河流沉积特征和沉积模式[J].沉积学报,2003,21(2):219-227.(XIE Qingbin,ZHU Xiaomin,GUAN Shourui,et al.Depositional characterisytics and models of the modern anastomosing river in China[J].Acta Sedimentologica Sinica,2003,21(2):219-227.(in Chinese))
    [30]王随继.赣江入湖三角洲上的网状河流体系研究[J].地理科学,2002,22(2):202-207.(WANG Suiji.Study of the anastomosing fluvial system on the delta plain of the Ganjiang River[J].Scientiageographica Sinica,2002,22(2):202-207.(in Chinese))
    [31]熊平,程琛,陈顺顺.网状河流沉积特征研究[J].内蒙古石油化工,2012,38(10):100-102.(XIONG Ping,CHENG Chen,CHEN Shunshun.Research on depositional characteristics of anastomosing river[J].Inner Mongolia Petrochemical Industry,2012,38(10):100-102.(in Chinese))
    [32]王随继,尹寿鹏.网状河流和分汊河流的河型归属讨论[J].地学前缘,2000(增刊2):79-86.(WANGSuiji,YIN Shoupeng.Discussion on channel patterns of anastomosing and anabranched rivers[J].Earth Science Frontiers,2000(Sup2):79-86.(in Chinese))
    [33]何幼斌,王文广.沉积岩石学[M].北京:石油工业出版社,2008.
    [34]FISHER W L,BROWN L F,SCOTT A J,et al.Delta systems in the exploration for oil and gas[M].Austin:University of Texas,1969.
    [35]GALLOWAY W E.Process framework for describing the morphologic and stratigraphic evolution of deltaic depositional system[M]//BROUSSARD M L.Deltas:modes of exploration.Houston:Houston Geological Society,1975:87-98.
    [36]ROBERTS H H,ADAMS R D,CUNNINGHAM R W.Evolution of sand-dominant subaerial phase,Atchafalaya delta,Louisiana[J].Aapg Bulletin American Association of Petroleum Geologists,1980,64(2):264-279.
    [37]GELEYNSE N,STORMS J E A,STIVE M J F,et al.Modeling of a mixed-load fluvio-deltaic system[J].Geophysical Research Letters,2010,37(5):5402.
    [38]SEYBOLD H,ANDRADE J S,HERRMANN H J.Modeling river delta formation[J].Proceedings of the National Academy of Sciences of the United States of America,2007,104(43):16804-16809.
    [39]宋春晖,方小敏,师永民,等.青海湖现代三角洲沉积特征及形成控制因素[J].兰州大学学报(自科版),2001,37(3):112-120.(SONG Chunhui,FANGXiaomin,SHI Yongmin,et al.Sedimentary characteristics of modern lacustrine deltas in Qinghai Lake and their controlling factors[J].Journal of Lanzhou University(Natural Sciences),2001,37(3):112-120.(in Chinese))
    [40]金德生,刘书楼,郭庆伍.应用河流地貌实验与模拟研究[M].北京:地震出版社,1992.
    [41]SYVITSKI J P M,KETTNER A J,CORREGGIAR A,et al.Distributary channels and their impact on sediment dispersal[J].Marine Geology,2005,222/223:75-94.
    [42]EDMONDS D,SLINGERLAND R,BEST J,et al.Response of river-dominated delta channel networks to permanent changes in river discharge[J].Geophysical Research Letters,2010,37(12):107-111.
    [43]TEJEDOR A,LONGJAS A,ZALIAPIN I,et al.Delta channel networks:a graph-theoretic approach for studying connectivity and steady state transport on deltaic surfaces[J].Water Resources Research,2015,51(6):3998-4018.
    [44]朱筱敏,刘媛,方庆,等.大型坳陷湖盆浅水三角洲形成条件和沉积模式:以松辽盆地三肇凹陷扶余油层为例[J].地学前缘,2012,19(1):89-99.(ZHUXiaomin,LIU Yuan,FANG Qing,et al.Formation and sedimentary model of shallow delta in large-scale lake,example from Cretaceous Quantou formation in Sanzhao Sag,Songliao Basin[J].Earth Science Frontiers,2012,19(1):89-99.(in Chinese))
    [45]赖志云,周维.舌状三角洲和鸟足状三角洲形成及演变的沉积模拟实验[J].沉积学报,1994,12(2):37-44.(LAI Zhiyun,ZHOU Wei.Experimental formation and development of lobate and birdfoot deltas[J].Acta Sedimentologica Sinica,1994,12(2):37-44.(in Chinese))
    [46]张春生,刘忠保,施冬,等.砂质扇三角洲沉积过程实验研究[J].江汉石油学院学报,2003,25(2):1-4.(ZHANG Chunsheng,LIU Zhongbao,SHI Dong,et al.Experimental study of sandy-fan-delta sedimentary process[J].Journal of Jianghan Petroleum Institute,2003,25(2):1-4.(in Chinese))
    [47]黄秀,刘可禹,邹才能,等.鄱阳湖浅水三角洲沉积体系三维定量正演模拟[J].地球科学(中国地质大学学报),2013,38(5):1005-1013.(HUANG Xiu,LIUKeyu,ZOU Caineng,et al.Forward stratigraphic modelling of the depositional process and evolution of shallow water deltas in the Poyang Lake,southern China[J].Earth Science(Journal of China University of Geosciences),2013,38(5):1005-1013.(in Chinese))
    [48]SYVITSKI J P M,KETTNER A J,OVEREEM I,et al.Sinking deltas due to human activities[J].Nature Geoscience,2008,2(10):681-686.
    [49]SMITH N D,CROS T A,DUFFICY J P,et al.Anatomy of an avulsion[J].Sedimentology,1989,36(1):1-23.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700